Millisecond speed deep learning based proton dose calculation with Monte Carlo accuracy
Oscar Pastor-Serrano, Zolt\'an Perk\'o

TL;DR
This paper introduces DoTA, a deep learning algorithm that predicts proton dose distributions with Monte Carlo accuracy in milliseconds, enabling real-time adaptive radiotherapy planning.
Contribution
The authors develop a novel neural network architecture combining CNNs and transformers to achieve ultra-fast, accurate proton dose calculations comparable to Monte Carlo methods.
Findings
Predicts proton dose in 5 ms with 99.37% gamma pass rate.
Calculates full treatment plans in 10-15 seconds with 99.70% gamma pass rate.
Outperforms previous analytical and deep learning dose calculation methods.
Abstract
Next generation online and real-time adaptive radiotherapy workflows require precise particle transport simulations in sub-second times, which is unfeasible with current analytical pencil beam algorithms (PBA) or stochastic Monte Carlo (MC) methods. We present a data-driven millisecond speed dose calculation algorithm (DoTA) accurately predicting the dose deposited by mono-energetic proton pencil beams for arbitrary energies and patient geometries. Given the forward-scattering nature of protons, we frame 3D particle transport as modeling a sequence of 2D geometries in the beam's eye view. DoTA combines convolutional neural networks extracting spatial features (e.g., tissue and density contrasts) with a transformer self-attention backbone that routes information between the sequence of geometry slices and a vector representing the beam's energy, and is trained to predict low noise MC…
Peer Reviews
No public reviews on file for this paper yet. If you reviewed it on a platform where reviews are public (OpenReview, ICLR, NeurIPS, ICML), you can paste yours below so the community can read it here.
Videos
No videos yet. Explain this paper in a talk, walkthrough, or lecture? Add one.
Taxonomy
TopicsRadiation Therapy and Dosimetry · Advanced Radiotherapy Techniques · Nuclear Physics and Applications
